Experimental study on the surface defects of materials in bar rolling with a processing map applicable to billet-to-oval groove rolling

Dongyun Lee, Yong-Hoon Roh, Youngseog Lee
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Abstract

This paper proposes a systematic method for detecting surface defects (SDs) on specimens by performing a pilot hot (850°C–950°C) bar rolling test and suggests a processing map for billet-to-oval groove pass in bar rolling mills. Unlike previous studies, the specimens for the rolling test were prepared such that the billet surface became the surface of the specimens. A series of the rolling tests were performed at different temperature and area reduction ratios. Physical-chemical nondestructive testing was employed to detect SDs in the specimens before and after the rolling test. The depth of the SDs of the rolled specimens was measured using an optical microscope. The results revealed that the SDs depended both on the rolling parameters (temperature and reduction ratios) and the contact condition between the specimen and the roll groove during rolling, which is one of the characteristics of bar rolling that distinguishes it from flat rolling. The decrease in temperature caused an increase in the defect depth above the appropriate reduction ratio of 24.61% when the part of the specimen was in contact with the roll shoulder curve and the relief line of the oval roll groove. The proposed processing map presents a guiding path for operators in actual bar rolling mills to quickly determine a rolling condition (combination of temperature and reduction ratio), avoid SDs, and minimize defect depth within an acceptable range.
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棒材轧制过程中材料表面缺陷的实验研究及适用于坯料到卵形槽轧制的加工图
本文通过进行试验性热轧(850°C-950°C)棒材轧制试验,提出了一种检测试样表面缺陷(SD)的系统方法,并提出了棒材轧机坯料至椭圆槽道次的加工图。与以往研究不同的是,轧制试验用试样的制备方式是将坯料表面作为试样表面。在不同温度和面积缩减比下进行了一系列轧制试验。在轧制试验前后,采用物理化学无损检测方法检测试样中的 SD。使用光学显微镜测量了轧制试样的 SD 深度。结果表明,SD 既取决于轧制参数(温度和缩径比),也取决于轧制过程中试样与轧槽的接触情况,这也是棒材轧制区别于平板轧制的特征之一。当试样的一部分与辊肩曲线和椭圆形辊槽的浮雕线接触时,温度降低会导致缺陷深度增加,超过 24.61% 的适当缩减率。所提出的加工图为实际棒材轧机的操作人员提供了一条指导路径,使他们能够快速确定轧制条件(温度和缩减比的组合),避免出现 SD,并在可接受的范围内最大限度地减少缺陷深度。
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来源期刊
CiteScore
5.10
自引率
30.80%
发文量
167
审稿时长
5.1 months
期刊介绍: Manufacturing industries throughout the world are changing very rapidly. New concepts and methods are being developed and exploited to enable efficient and effective manufacturing. Existing manufacturing processes are being improved to meet the requirements of lean and agile manufacturing. The aim of the Journal of Engineering Manufacture is to provide a focus for these developments in engineering manufacture by publishing original papers and review papers covering technological and scientific research, developments and management implementation in manufacturing. This journal is also peer reviewed. Contributions are welcomed in the broad areas of manufacturing processes, manufacturing technology and factory automation, digital manufacturing, design and manufacturing systems including management relevant to engineering manufacture. Of particular interest at the present time would be papers concerned with digital manufacturing, metrology enabled manufacturing, smart factory, additive manufacturing and composites as well as specialist manufacturing fields like nanotechnology, sustainable & clean manufacturing and bio-manufacturing. Articles may be Research Papers, Reviews, Technical Notes, or Short Communications.
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